Advanced Strategies for Improving Lithium Storage Performance under Cryogenic Conditions

Author:

Zheng Yiwei1,Qian Tao23,Zhou Jinqiu2,Liu Jie2,Wang Zhenkang1,Wang Sai1,Wang Yiwen1,Yan Chenglin13ORCID

Affiliation:

1. Key Laboratory of Core Technology of High Specific Energy Battery and Key Materials for Petroleum and Chemical Industry College of Energy Soochow University Suzhou 215006 China

2. College of Chemistry and Chemical Engineering Nantong University Seyuan 9 Nantong 226000 China

3. Light Industry Institute of Electrochemical Power Sources Suzhou 215600 China

Abstract

AbstractAs a vital technology in portable electronic equipment, electric vehicle, and stationary energy storage, lithium‐based batteries are currently gaining widespread attention. However, when batteries are used more frequently, there are greater worries regarding their susceptibility to temperature, especially at low temperatures (LTs). In this review, the factors that lead to capacity loss in lithium‐based batteries at LT are analyzed and a summary of the most recent cutting‐edge approaches for improving LT kinetics is provided. In order to achieve satisfactory LT performance, electrode technology, interface chemistry, and electrolyte engineering must be taken into account during the cell design process. The recently revealed unique cryogenic storage mode and design concepts are also thoroughly introduced in this review, which is intended to motivate researchers in related domains. Finally, new insights, intriguing concepts, and workable solutions are proposed to promote the ongoing development of high‐performance cryogenic lithium batteries.

Funder

Natural Science Foundation of Jiangsu Province

Publisher

Wiley

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

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